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HWS100A RELIABILITY DATA 信頼性データ TDK-Lambda A258-57-01C

HWS1 0 0 A RELI ABI LI TY DATA 信頼性データ - TDK...HWS1 0 0 A 1.M TB F 計算値 Cal c ul at e d Val ue s of M TB F ( 1) 部品ストレス解析法M TB F P ar t s s t r e

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  • HWS100A

    RELIABILITY DATA

    信頼性データ

    TDK-Lambda A258-57-01C

  • HWS100AI N D E X

    PAGE

    1.MTBF計算値 Calculated Values of MTBF ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-1~2

    2.部品ディレーティング Components Derating ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-3~7

    3.主要部品温度上昇値 Main Components Temperature Rise △T List ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-8~9

    4.電解コンデンサ推定寿命計算値 Electrolytic Capacitor Lifetime ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-10~13

    カバー付きタイプ(オプション)・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-14~17With cover type (Option model)

    5.アブノーマル試験 Abnormal Test ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-18~19

    6.振動試験 Vibration Test ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-20

    7.ノイズシミュレート試験 Noise Simulate Test ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-21

    8.熱衝撃試験 Thermal Shock Test ・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・・R-22

    ※ 試験結果は、代表データでありますが、全ての製品はほぼ同等な特性を示します。従いまして、以下の結果は参考値とお考え願います。

    Test results are typical data. Nevertheless the following results are considered to be reference data because all units have nearly the same characteristics.

    TDK-Lambda

  • HWS100A

    1.MTBF計算値 Calculated Values of MTBF

    (1) 部品ストレス解析法MTBF Parts stress reliability projection MTBF

    MODEL : HWS100A-24

     算出方法 Calculating Method

    Telcordiaの部品ストレス解析法(*1)で算出されています。故障率λSSは、それぞれの部品ごとに電気ストレスと動作温度によって決定されます。Calculated based on parts stress reliability projection of Telcordia (*1).Individual failure rate λSS is calculated by the electric stress and temperature rise of the each part.

    *1: Telcordia document “Reliability Prediction Procedure for Electronic Equipment”(Document number SR-332,Issue3)

    <算出式>時間 (Hours)

    λequip :全機器故障率(FITs) Total equipment failure rate (FITs = Failures in109 hours)

    λGi :i 番目の部品に対する基礎故障率 Generic failure rate for the ith part

    πQi :i 番目の部品に対する品質ファクタ Quality factor for the ith part

    πSi :i 番目の部品に対するストレスファクタ Stress factor for the ith part

    πTi :i 番目の部品に対する温度ファクタ Temperature factor for the ith part

    m :異なる部品の数 Number of different part types

    N i :i 番目の部品の個数 Quantity of ith part type

    πE :機器の環境ファクタ Equipment environmental factor

     MTBF値 MTBF Values

    条件 Conditions ・入力電圧    : 230VAC  ・出力電圧、電流   : 24VDC, 4.5A (100%)  Input voltage Output voltage & current ・環境ファクタ : GB (Ground, Benign)  ・取付方法 :標準取付 A  Environmental factor Mounting method : Standard mounting A

    SR-332,Issue3MTBF(Ta=25℃) ≒ 2,963,512 時間 (Hours)

    MTBF(Ta=40℃) ≒ 1,377,331 時間 (Hours)

    9

    1

    10)(

    11´

    ×==

    å=

    m

    issiiE

    equip NMTBF

    lpλ

    TiSiQiGissi pppll ×××=

    TDK-Lambda R-1

  • HWS100A

    (2) 部品点数法MTBF Part count reliability projection MTBF

    MODEL : HWS100A-5

     算出方法 Calculating Method

    JEITA (RCR-9102B)の部品点数法で算出されています。それぞれの部品ごとに、部品故障率λGが与えられ、各々の点数によって決定されます。Calculated based on part count reliability projection of JEITA (RCR-9102B).Individual failure rates λG is given to each part and MTBF is calculated by the count of each part.

    <算出式>時間 (Hours)

    λequip :全機器故障率 (故障数/106時間) Total equipment failure rate (Failure/106Hours)

    λG :i 番目の同属部品に対する故障率 (故障数/106時間) Generic failure rate for the ith generic part (Failure/106Hours)

    ni :i 番目の同属部品の個数 Quantity of ith generic part

    n :異なった同属部品のカテゴリーの数 Number of different generic part categories

    πQ :i 番目の同属部品に対する品質ファクタ (πQ=1) Generic quality factor for the ith generic part (πQ=1)

     MTBF値 MTBF Values

    GF : 地上固定 (Ground, Fixed)

    RCR-9102BMTBF ≒ 212,964 時間 (Hours)

    ( )6

    1

    6 101101 ´=´=å=

    n

    iiQGi

    equip nMTBF

    plλ

    TDK-Lambda R-2

  • HWS100A2.部品ディレーティング Components Derating

    MODEL : HWS100A-5

    (1) 算出方法 Calculating Method

    (a) 測定方法 Measuring method

    ・取付方法 :標準取付 : A ・周囲温度 :50℃ Mounting method Standard mounting : A Ambient temperature・入力電圧 :100 , 200VAC ・出力電圧、電流 :5V, 20A(100%) Input voltage Output voltage & current

    (b) 半導体 Semiconductors

    ケース温度、消費電力、熱抵抗より使用状態の接合点温度を求め 最大定格、接合点温度との比較を求めました。 Compared with maximum junction temperature and actual one which is calculated based on case temperature, power dissipation and thermal impedance.

    (c) IC、抵抗、コンデンサ等 IC, Resistors, Capacitors, etc.

    周囲温度、使用状態、消費電力など、個々の値は設計基準内に入っています。 Ambient temperature, operating condition, power dissipation and so on are within   derating criteria.

    (d) 熱抵抗算出方法 Calculating method of thermal impedance

    Tc :ディレーティングの始まるケース温度 一般に25℃ Case Temperature at Start Point of Derating;25℃ in General

    Tl :ディレーティングの始まるリード温度 一般に25℃ Lead Temperature at Start Point of Derating;25℃ in General

    Pch(max) :最大チャネル損失 Maximum Channel Dissipation

    Tj(max) :最大接合点(チャネル)温度(Tch(max)) Maximum Junction (channel) Temperature

    θj-c :接合点(チャネル)からケースまでの熱抵抗(θch-c) Thermal Impedance between Junction (channel) and Case

    θj-l :接合点(チャネル)からリードまでの熱抵抗(θch-l) Thermal Impedance between Junction (channel) and Lead

    (max)PchTc(max)Tjcj -=-q

    (max)PchTl(max)Tjj -=- lq

    TDK-Lambda R-3

  • HWS100A(2) 部品ディレーティング表 Components Derating List

    部品番号 Vin = 100VAC Load = 100% Ta = 50℃Location No.

    Q1 Tj (max) = 150 ℃ θj-c = 3.7 ℃/WIPA60R199CP Pch = 1.90 W ΔTc = 54.8 ℃ Tc = 104.8 ℃

    INFINEON Tch = Tc + ((θj-c) × Pch ) = 111.8 ℃ D.F. = 74.5 %

    Q2 Tj (max) = 150 ℃ θj-c = 3.125 ℃/WTK8A50D Pch = 0.89 W ΔTc = 57.4 ℃ Tc = 107.4 ℃TOSHIBA Tch = Tc + ((θj-c) × Pch ) = 110.2 ℃

    D.F. = 73.5 %Q3 Tj (max) = 150 ℃ θj-c = 3.125 ℃/W

    TK8A50D Pch = 1.02 W ΔTc = 56.1 ℃ Tc = 106.1 ℃TOSHIBA Tch = Tc + ((θj-c) × Pch ) = 109.3 ℃

    D.F. = 72.9 %Q51 Tj (max) = 175 ℃ θj-c = 3.8 ℃/W

    IPA057N08N3 G Pch = 0.83 W ΔTc = 51.6 ℃ Tc = 101.6 ℃INFINEON Tch = Tc + ((θj-c) × Pch ) = 104.8 ℃

    D.F. = 59.9 %Q52 Tj (max) = 175 ℃ θj-c = 3.8 ℃/W

    IPA057N08N3 G Pch = 1.61 W ΔTc = 58.2 ℃ Tc = 108.2 ℃INFINEON Tch = Tc + ((θj-c) × Pch ) = 114.3 ℃

    D.F. = 65.3 %Q101 Tj (max) = 150 ℃ θj-c = 625.0 ℃/W

    2SC3928A Pc = 0.1 mW ΔTc = 44.1 ℃ Tc = 94.1 ℃ISAHAYA Tch = Tc + ((θj-c) × Pc ) = 94.2 ℃

    D.F. = 62.8 %Q104 Tj (max) = 150 ℃ θj-c = 250.0 ℃/W

    2SA2167 Pc = 13.2 mW ΔTc = 47.0 ℃ Tc = 97.0 ℃ISAHAYA Tch = Tc + ((θj-c) × Pc ) = 100.3 ℃

    D.F. = 66.9 %Q201 Tj (max) = 150 ℃ θj-c = 83.3 ℃/W

    RQK0603CGDQSTL Pc = 0.13 W ΔTc = 47.4 ℃ Tc = 97.4 ℃RENESAS Tch = Tc + ((θj-c) × Pc ) = 108.2 ℃

    D.F. = 72.1 %D1 Tj (max) = 150 ℃ θj-c = 2.0 ℃/W

    KBJ1006G Pd = 2.60 W ΔTc = 68.3 ℃ Tc = 118.3 ℃LITE-ON Tch = Tc + ((θj-c) × Pd ) = 123.5 ℃

    D.F. = 82.3 %D2 Tj (max) = 150 ℃ θj-c = 4.0 ℃/W

    RFU5TF6S Pd = 0.62 W ΔTc = 53.9 ℃ Tc = 103.9 ℃ROHM Tch = Tc + ((θj-c) × Pd ) = 106.4 ℃

    D.F. = 70.9 %D104 Tj (max) = 150 ℃ θj-l = 30.0 ℃/W

    CRH01 Pd = 2.8 mW ΔTl = 44.1 ℃ Tl = 94.1 ℃TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 94.2 ℃

    D.F. = 62.8 %D105 Tj (max) = 150 ℃ θj-l = 30.0 ℃/W

    CRH01 Pd = 2.8 mW ΔTl = 43.4 ℃ Tl = 93.4 ℃TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 93.5 ℃

    D.F. = 62.3 %

    TDK-Lambda R-4

  • HWS100A

    部品番号 Vin = 100VAC Load = 100% Ta = 50℃Location No.

    D106 Tj (max) = 150 ℃ θj-l = 20.0 ℃/WCRS04 Pd = 19.2 mW ΔTl = 47.4 ℃ Tl = 97.4 ℃

    TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 97.8 ℃ D.F. = 65.2 %

    D107 ・ D109 Tj (max) = 150 ℃ θj-l = 23.0 ℃/WLN1F60 Pd = 9.6 mW ΔTl = 51.0 ℃ Tl = 101.0 ℃

    SHINDENGEN Tch = Tl + ((θj-l) × Pd ) = 101.2 ℃ D.F. = 67.5 %

    D112 ・ D113 Tj (max) = 150 ℃ θj-l = 30.0 ℃/WCRH01 Pd = 2.8 mW ΔTl = 45.9 ℃ Tl = 95.9 ℃

    TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 96.0 ℃ D.F. = 64.0 %

    D114 Tj (max) = 150 ℃ θj-l = 30.0 ℃/WCRH01 Pd = 2.1 mW ΔTl = 45.9 ℃ Tl = 95.9 ℃

    TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 96.0 ℃ D.F. = 64.0 %

    Z101 Tj (max) = 150 ℃ θj-c = 625.0 ℃/WUDZV TE-17 16B Pd = 0.8 mW ΔTc = 44.1 ℃ Tc = 94.1 ℃

    ROHM Tch = Tc + ((θj-c) × Pd ) = 94.6 ℃ D.F. = 63.1 %

    PC2 Tj (max) = 125 ℃ θj-c = 150.0 ℃/WPS2561DL1 Pd = 1.2 mW ΔTc = 36.3 ℃ Tc = 86.3 ℃

    (LED) Tch = Tc + ((θj-c) × Pd ) = 86.5 ℃RENESAS D.F. = 69.2 %

    PC2 Tj (max) = 125 ℃ θj-c = 150.0 ℃/WPS2561DL1 Pc = 2.1 mW ΔTc = 36.3 ℃ Tc = 86.3 ℃

    (TRANSISTOR) Tch = Tc + ((θj-c) × Pc ) = 86.6 ℃RENESAS D.F. = 69.3 %

    PD51SEL2410G If = 3.0 mA ΔTa = 20.3 ℃ Ta = 70.3 ℃SANKEN Allowable If(max) = 9.6 mA (at Ta=70.3℃)

    D.F. = 31.3 %

    TDK-Lambda R-5

  • HWS100A

    部品番号 Vin = 200VAC Load = 100% Ta = 50℃Location No.

    Q1 Tj (max) = 150 ℃ θj-c = 3.7 ℃/WIPA60R199CP Pch = 1.90 W ΔTc = 44.5 ℃ Tc = 94.5 ℃

    INFINEON Tch = Tc + ((θj-c) × Pch ) = 101.5 ℃ D.F. = 67.7 %

    Q2 Tj (max) = 150 ℃ θj-c = 3.125 ℃/WTK8A50D Pch = 0.89 W ΔTc = 49.4 ℃ Tc = 99.4 ℃TOSHIBA Tch = Tc + ((θj-c) × Pch ) = 102.2 ℃

    D.F. = 68.1 %Q3 Tj (max) = 150 ℃ θj-c = 3.125 ℃/W

    TK8A50D Pch = 1.02 W ΔTc = 48.4 ℃ Tc = 98.4 ℃TOSHIBA Tch = Tc + ((θj-c) × Pch ) = 101.6 ℃

    D.F. = 67.7 %Q51 Tj (max) = 175 ℃ θj-c = 3.8 ℃/W

    IPA057N08N3 G Pch = 0.83 W ΔTc = 48.0 ℃ Tc = 98.0 ℃INFINEON Tch = Tc + ((θj-c) × Pch ) = 101.2 ℃

    D.F. = 57.8 %Q52 Tj (max) = 175 ℃ θj-c = 3.8 ℃/W

    IPA057N08N3 G Pch = 1.61 W ΔTc = 54.7 ℃ Tc = 104.7 ℃INFINEON Tch = Tc + ((θj-c) × Pch ) = 110.8 ℃

    D.F. = 63.3 %Q101 Tj (max) = 150 ℃ θj-c = 625.0 ℃/W

    2SC3928A Pc = 0.1 mW ΔTc = 36.5 ℃ Tc = 86.5 ℃ISAHAYA Tch = Tc + ((θj-c) × Pc ) = 86.6 ℃

    D.F. = 57.7 %Q104 Tj (max) = 150 ℃ θj-c = 250.0 ℃/W

    2SA2167 Pc = 13.2 mW ΔTc = 41.3 ℃ Tc = 91.3 ℃ISAHAYA Tch = Tc + ((θj-c) × Pc ) = 94.6 ℃

    D.F. = 63.1 %Q201 Tj (max) = 150 ℃ θj-c = 83.3 ℃/W

    RQK0603CGDQSTL Pc = 0.13 W ΔTc = 43.4 ℃ Tc = 93.4 ℃RENESAS Tch = Tc + ((θj-c) × Pc ) = 104.2 ℃

    D.F. = 69.5 %D1 Tj (max) = 150 ℃ θj-c = 2.0 ℃/W

    KBJ1006G Pd = 1.35 W ΔTc = 40.7 ℃ Tc = 90.7 ℃LITE-ON Tch = Tc + ((θj-c) × Pd ) = 93.4 ℃

    D.F. = 62.3 %D2 Tj (max) = 150 ℃ θj-c = 4.0 ℃/W

    RFU5TF6S Pd = 0.62 W ΔTc = 45.1 ℃ Tc = 95.1 ℃ROHM Tch = Tc + ((θj-c) × Pd ) = 97.6 ℃

    D.F. = 65.1 %D104 Tj (max) = 150 ℃ θj-l = 30.0 ℃/W

    CRH01 Pd = 2.8 mW ΔTl = 36.5 ℃ Tl = 86.5 ℃TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 86.6 ℃

    D.F. = 57.7 %D105 Tj (max) = 150 ℃ θj-l = 30.0 ℃/W

    CRH01 Pd = 2.8 mW ΔTl = 35.7 ℃ Tl = 85.7 ℃TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 85.8 ℃

    D.F. = 57.2 %

    TDK-Lambda R-6

  • HWS100A

    部品番号 Vin = 200VAC Load = 100% Ta = 50℃Location No.

    D106 Tj (max) = 150 ℃ θj-l = 20.0 ℃/WCRS04 Pd = 19.2 mW ΔTl = 41.8 ℃ Tl = 91.8 ℃

    TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 92.2 ℃ D.F. = 61.5 %

    D107 ・ D109 Tj (max) = 150 ℃ θj-l = 23.0 ℃/WLN1F60 Pd = 9.6 mW ΔTl = 44.9 ℃ Tl = 94.9 ℃

    SHINDENGEN Tch = Tl + ((θj-l) × Pd ) = 95.1 ℃ D.F. = 63.4 %

    D112 ・ D113 Tj (max) = 150 ℃ θj-l = 30.0 ℃/WCRH01 Pd = 2.8 mW ΔTl = 40.1 ℃ Tl = 90.1 ℃

    TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 90.2 ℃ D.F. = 60.1 %

    D114 Tj (max) = 150 ℃ θj-l = 30.0 ℃/WCRH01 Pd = 2.1 mW ΔTl = 40.1 ℃ Tl = 90.1 ℃

    TOSHIBA Tch = Tl + ((θj-l) × Pd ) = 90.2 ℃ D.F. = 60.1 %

    Z101 Tj (max) = 150 ℃ θj-c = 625.0 ℃/WUDZV TE-17 16B Pd = 4.6 mW ΔTc = 36.5 ℃ Tc = 86.5 ℃

    ROHM Tch = Tc + ((θj-c) × Pd ) = 89.4 ℃ D.F. = 59.6 %

    PC2 Tj (max) = 125 ℃ θj-c = 150.0 ℃/WPS2561DL1 Pd = 1.2 mW ΔTc = 29.0 ℃ Tc = 79.0 ℃

    (LED) Tch = Tc + ((θj-c) × Pd ) = 79.2 ℃RENESAS D.F. = 63.4 %

    PC2 Tj (max) = 125 ℃ θj-c = 150.0 ℃/WPS2561DL1 Pc = 2.1 mW ΔTc = 29.0 ℃ Tc = 79.0 ℃

    (TRANSISTOR) Tch = Tc + ((θj-c) × Pc ) = 79.3 ℃RENESAS D.F. = 63.4 %

    PD51SEL2410G If = 3.0 mA ΔTa = 18.4 ℃ Ta = 68.4 ℃SANKEN Allowable If(max) = 10.5 mA (at Ta=68.4℃)

    D.F. = 28.6 %

    TDK-Lambda R-7

  • HWS100A3.主要部品温度上昇値 Main Components Temperature Rise △T List

    MODEL : HWS100A-5

    (1) 測定条件 Measuring Conditions

    Mounting A Mounting B Mounting C Mounting D取付方法

    Mounting Method

    (標準取付 : A)(Standard Mounting : A)

    入力電圧 VinInput Voltage 100VAC出力電圧 Vo Output Voltage 5VDC出力電流 Io

    Output Current 20A(100%)

    (2) 測定結果 Measuring Results

    出力ディレーティング Io=100 %Output Derating Ta=50℃ Ta=40℃ Ta=40℃ Ta=40℃

    部品番号 部品名 取付方向 取付方向 取付方向 取付方向

    Location No. Part name Mounting A Mounting B Mounting C Mounting DQ1 MOS FET 54.8 56.7 60.6 65.9Q2 MOS FET 57.4 53.5 58.2 64.6Q3 MOS FET 56.1 50.9 57.2 62.6

    Q51 MOS FET 51.6 50.4 53.1 50.8Q52 MOS FET 58.2 57.4 62.1 56.9D1 BRIDGE DIODE 68.3 72.9 73.4 67.9D2 DIODE 53.9 54.4 58.6 62.6

    A101 CHIP IC 46.0 46.9 49.8 51.8A102 CHIP IC 43.8 43.5 47.0 47.1A201 CHIP IC 49.2 47.8 51.4 47.1

    T1 DRIVE TRANS 40.7 40.2 40.4 45.8T2 TRANS 58.7 55.0 59.8 59.4L1 BALUN 43.0 50.2 55.8 42.5L2 BALUN 43.0 50.8 51.7 50.7L3 CHOKE COIL 49.0 55.7 57.0 58.2

    L51 CHOKE COIL 54.4 52.6 55.4 47.8C6 E.CAP. 35.0 34.7 22.8 40.7C7 E.CAP. 34.0 28.0 34.4 44.1

    C51 E.CAP. 30.5 30.8 41.5 29.4C52 E.CAP. 33.0 32.3 43.0 31.5C53 E.CAP. 31.2 27.1 39.6 27.0PC2 PHOTO COUPLER 36.3 36.5 39.3 38.2

    PD51 LED 20.3 17.3 34.2 15.1

    ΔT Temperature Rise (℃)

    TB1

    TB1

    TB1

    TB1

    TDK-Lambda R-8

  • HWS100A

    (1) 測定条件 Measuring Conditions

    Mounting A Mounting B Mounting C Mounting D取付方法

    Mounting Method

    (標準取付 : A)(Standard Mounting : A)

    入力電圧 VinInput Voltage 200VAC出力電圧 Vo Output Voltage 5VDC出力電流 Io

    Output Current 20A(100%)

    (2) 測定結果 Measuring Results

    出力ディレーティング Io=100 %Output Derating Ta=50℃ Ta=40℃ Ta=40℃ Ta=40℃

    部品番号 部品名 取付方向 取付方向 取付方向 取付方向

    Location No. Part name Mounting A Mounting B Mounting C Mounting DQ1 MOS FET 44.5 45.8 49.1 52.7Q2 MOS FET 49.4 46.4 50.5 55.6Q3 MOS FET 48.4 44.2 49.6 54.1

    Q51 MOS FET 48.0 47.0 49.4 47.7Q52 MOS FET 54.7 53.8 58.3 53.9D1 BRIDGE DIODE 40.7 44.7 45.7 41.3D2 DIODE 45.1 45.9 49.1 52.0

    A101 CHIP IC 38.2 39.3 41.2 42.7A102 CHIP IC 37.7 38.5 41.0 41.4A201 CHIP IC 44.6 44.8 47.7 44.5

    T1 DRIVE TRANS 34.9 36.6 35.4 41.0T2 TRANS 54.8 52.5 56.5 56.6L1 BALUN 24.0 29.1 33.3 25.0L2 BALUN 25.1 30.9 32.8 29.9L3 CHOKE COIL 36.3 41.0 42.3 42.2

    L51 CHOKE COIL 48.0 49.0 51.4 45.4C6 E.CAP. 29.1 30.0 19.9 35.4C7 E.CAP. 28.3 24.6 30.4 38.1

    C51 E.CAP. 28.4 29.6 37.8 27.4C52 E.CAP. 30.8 30.6 40.1 31.1C53 E.CAP. 29.3 25.8 36.7 25.5PC2 PHOTO COUPLER 29.0 32.1 33.7 33.0

    PD51 LED 18.4 16.5 31.2 14.1

    ΔT Temperature Rise (℃)

    TB1

    TB1

    TB1

    TB1

    TDK-Lambda R-9

  • HWS100A4.電解コンデンサ推定寿命計算値 Electrolytic Capacitor Lifetime MODEL : HWS100A空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 AMounting A Conditions Ta 40℃ :

    50℃ : 60℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃20% 20.0 17.2 8.6 20% 20.0 17.8 8.940% 20.0 12.0 6.0 40% 20.0 13.6 6.860% 17.4 8.7 4.3 60% 19.8 9.9 5.080% 10.5 5.3 - 80% 12.3 6.1 -

    100% 7.3 3.7 - 100% 8.6 4.3 -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃

    20% 20.0 15.4 7.7 20% 20.0 15.9 8.040% 20.0 11.2 5.6 40% 20.0 13.4 6.760% 17.2 8.6 4.3 60% 20.0 10.5 5.280% 12.4 6.2 - 80% 16.5 8.2 -

    100% 8.5 4.2 - 100% 13.2 6.6 -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-10

  • HWS100A MODEL : HWS100A空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 BMounting B Conditions Ta 40℃ :

    50℃ : 60℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃20% 20.0 16.2 8.1 20% 20.0 17.2 8.640% 20.0 11.6 5.8 40% 20.0 13.3 6.660% 17.6 8.8 4.4 60% 20.0 10.0 5.080% 12.1 6.0 - 80% 13.6 6.8 -

    100% 7.7 - - 100% 8.7 - -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃

    20% 20.0 15.6 7.8 20% 20.0 16.8 8.440% 20.0 11.5 5.7 40% 20.0 12.3 6.260% 16.3 8.2 4.1 60% 19.2 9.6 4.880% 11.8 5.9 - 80% 14.6 7.3 -

    100% 8.1 - - 100% 11.2 - -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-11

  • HWS100A MODEL : HWS100A空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 CMounting C Conditions Ta 40℃ :

    50℃ : 60℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃20% 20.0 15.0 7.5 20% 20.0 14.7 7.340% 20.0 11.5 5.7 40% 20.0 11.4 5.760% 14.8 7.4 3.7 60% 13.6 6.8 3.480% 8.1 4.0 - 80% 7.4 3.7 -

    100% 3.7 - - 100% 3.5 - -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃

    20% 20.0 13.6 6.8 20% 20.0 13.6 6.840% 19.2 9.6 4.8 40% 20.0 11.1 5.560% 13.9 7.0 3.5 60% 16.9 8.5 4.280% 9.8 4.9 - 80% 12.6 6.3 -

    100% 6.5 - - 100% 9.5 - -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-12

  • HWS100A MODEL : HWS100A空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 DMounting D Conditions Ta 40℃ :

    50℃ : 60℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃20% 20.0 12.7 6.4 20% 20.0 12.8 6.440% 18.6 9.3 4.7 40% 20.0 10.1 5.060% 13.4 6.7 3.3 60% 15.8 7.9 3.980% 8.2 4.1 - 80% 10.6 5.3 -

    100% 4.9 - - 100% 7.4 - -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃

    20% 20.0 12.4 6.2 20% 20.0 11.8 5.940% 16.3 8.2 4.1 40% 16.3 8.2 4.160% 10.4 5.2 2.6 60% 11.2 5.6 2.880% 6.7 3.3 - 80% 8.0 4.0 -

    100% 3.8 - - 100% 5.5 - -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-13

  • HWS100AMODEL : HWS100A/A カバー付きタイプ(オプション) With cover type (Option model)

    空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 AMounting A Conditions Ta 40℃ :

    50℃ : 60℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃20% 20.0 14.2 7.1 20% 20.0 14.8 7.440% 18.9 9.5 4.7 40% 20.0 11.2 5.660% 13.5 6.7 3.4 60% 16.7 8.3 4.280% 8.8 4.4 - 80% 11.8 5.9 -

    100% 5.2 2.6 - 100% 6.2 3.1 -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 40℃ 50℃ 60℃ Load 40℃ 50℃ 60℃

    20% 20.0 14.3 7.2 20% 20.0 15.7 7.840% 17.6 8.8 4.4 40% 20.0 10.0 5.060% 12.2 6.1 3.1 60% 14.9 7.5 3.780% 8.4 4.2 - 80% 11.0 5.5 -

    100% 5.2 2.6 - 100% 8.1 4.0 -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-14

  • HWS100AMODEL : HWS100A/A カバー付きタイプ(オプション) With cover type (Option model)

    空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 BMounting B Conditions Ta 35℃ :

    40℃ : 50℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 35℃ 40℃ 50℃ Load 35℃ 40℃ 50℃20% 20.0 20.0 12.8 20% 20.0 20.0 13.540% 20.0 18.0 9.0 40% 20.0 20.0 11.060% 18.5 13.1 6.5 60% 20.0 15.7 7.880% 11.6 8.2 - 80% 15.6 11.0 -

    100% 6.4 - - 100% 7.7 - -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 35℃ 40℃ 50℃ Load 35℃ 40℃ 50℃

    20% 20.0 20.0 13.8 20% 20.0 20.0 14.940% 20.0 16.6 8.3 40% 20.0 17.3 8.660% 15.6 11.0 5.5 60% 18.3 12.9 6.580% 10.1 7.1 - 80% 13.0 9.2 -

    100% 6.2 - - 100% 9.2 - -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-15

  • HWS100AMODEL : HWS100A/A カバー付きタイプ(オプション) With cover type (Option model)

    空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 CMounting C Conditions Ta 30℃ :

    40℃ : 50℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 30℃ 40℃ 50℃ Load 30℃ 40℃ 50℃20% 20.0 20.0 12.8 20% 20.0 20.0 14.740% 20.0 18.7 9.4 40% 20.0 20.0 10.960% 20.0 11.7 5.8 60% 20.0 13.1 6.680% 11.4 5.7 - 80% 13.9 6.9 -

    100% 4.6 - - 100% 6.2 - -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 30℃ 40℃ 50℃ Load 30℃ 40℃ 50℃

    20% 20.0 20.0 14.0 20% 20.0 20.0 14.740% 20.0 19.2 9.6 40% 20.0 20.0 10.660% 20.0 13.7 6.8 60% 20.0 16.0 8.080% 18.6 9.3 - 80% 20.0 11.9 -

    100% 12.1 - - 100% 17.6 - -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-16

  • HWS100AMODEL : HWS100A/A カバー付きタイプ(オプション) With cover type (Option model)

    空冷条件 : 自然空冷 Cooling condition : Convection cooling

    取付方向 DMounting D Conditions Ta 35℃ :

    40℃ : 50℃ :

    Vin = 100VAC Vin = 200VACTa Ta

    Load 35℃ 40℃ 50℃ Load 35℃ 40℃ 50℃20% 20.0 20.0 10.6 20% 20.0 20.0 11.440% 19.3 13.7 6.8 40% 20.0 16.9 8.560% 13.2 9.3 4.7 60% 16.5 11.6 5.880% 7.2 5.1 - 80% 10.5 7.4 -

    100% 3.1 - - 100% 5.8 - -

    24VVin = 100VAC Vin = 200VAC

    Ta TaLoad 35℃ 40℃ 50℃ Load 35℃ 40℃ 50℃

    20% 20.0 20.0 10.8 20% 20.0 20.0 11.340% 19.0 13.5 6.7 40% 20.0 16.1 8.160% 11.5 8.1 4.1 60% 15.6 11.0 5.580% 6.9 4.9 - 80% 10.4 7.4 -

    100% 3.5 - - 100% 6.6 - -

    上記推定寿命は、弊社計算方法により算出した値であり、封口ゴムの劣化等の影響を含めておりません。The lifetime is calculated based on our method and doesn't include the seal rubber degradation effect etc.

    5V

    Lifetime (years) Lifetime (years)

    Lifetime (years) Lifetime (years)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    0

    4

    8

    12

    16

    20

    10 40 70 100

    Life

    time

    (yea

    rs)

    Output current (%)

    TB1

    TDK-Lambda R-17

  • HWS100A5.アブノーマル試験 Abnormal Test

    MODEL : HWS100A-5

    (1) 試験条件 Test ConditionsInput : 265VAC Output : 5V, 20A Ta : 25℃

    (2) 試験結果 Test Results ( Da : Damaged )

    Testmode

    a b c d e f g h I j k l

    No. 部品No. 試験端子

    ョート

    オープン

    発火

    発煙

    破裂

    異臭

    赤熱

    破損

    ューズ断

    OVP

    OCP

    出力断

    変化なし

    その他

    記事

    LocationNo.

    Testpoint Sh

    ort

    Ope

    n

    Fire

    Smok

    e

    Bur

    st

    Smel

    l

    Red 

    hot

    Dam

    aged

    Fuse 

    blow

    n

    No  

    outp

    ut

    No  

    chan

    ge

    Oth

    ers

    Note

    1 Q1 D-S ○ ○ ○ ○ Da:D1012 D-G ○ ○ ○ ○ Da:Q1,D101

    3 G-S ○ ○ 力率低下Power factor low

    4 D ○ ○ 力率低下Power factor low

    5 S ○ ○ 力率低下Power factor low6 G ○ ○ ○ ○ Da:Q1,D1017 Q2 D-S ○ ○8 D-G ○ ○9 G-S ○ ○10 D ○ ○11 S ○ ○12 G ○ ○13 Q3 D-S ○ ○14 D-G ○ ○15 G-S ○ ○16 D ○ ○17 S ○ ○18 G ○ ○

    19 Q51 D-S ○ ○ 間欠発振動作Hiccup

    20 D-G ○ ○ 間欠発振動作Hiccup

    21 G-S ○ ○ 入力電力増加Input power increase22 D ○ ○23 S ○ ○

    24 G ○ ○ 入力電力増加Input power increase

    Test position Test result

    TDK-Lambda R-18

  • HWS100A ( Da : Damaged )

    Testmode

    a b c d e f g h I j k l

    No. 部品No. 試験端子

    ョート

    オープン

    発火

    発煙

    破裂

    異臭

    赤熱

    破損

    ューズ断

    OVP

    OCP

    出力断

    変化なし

    その他

    記事

    LocationNo.

    Testpoint Sh

    ort

    Ope

    n

    Fire

    Smok

    e

    Bur

    st

    Smel

    l

    Red 

    hot

    Dam

    aged

    Fuse 

    blow

    n

    No  

    outp

    ut

    No  

    chan

    ge

    Oth

    ers

    Note

    25 Q52 D-S ○ ○26 D-G ○ ○

    27 G-S ○ ○ ○Da:F201入力電力増加Input power increase

    28 D ○ ○29 S ○ ○

    30 G ○ ○ 入力電力増加Input power increase31 C6 ○ ○ ○

    32 ○ ○ 力率低下Power factor low33 C51 ○ ○

    34 ○ ○ 出力リップル大Output ripple increase35 D1 AC-AC ○ ○ ○36 DC-DC ○ ○ ○37 AC-DC ○ ○ ○38 AC ○ ○39 DC ○ ○40 D2 A-K ○ ○ ○ ○ Da:Q141 A/K ○ ○ ○ ○ Da:Q142 D107 A-K ○ ○

    43 A/K ○ ○ 入力電力増加Input power increase44 D109 A-K ○ ○

    45 A/K ○ ○ 入力電力増加Input power increase46 T1 1-2 ○ ○47 6-7 ○ ○48 1/2 ○ ○49 6/7 ○ ○

    50 T2 1-2 ○ ○間欠発振動作

    Hiccup51 3-4 ○ ○52 7,8-9,10 ○ ○

    53 11-12 ○ ○ 間欠発振動作Hiccup54 1/2 ○ ○55 3/4 ○ ○56 7,8/9,10 ○ ○

    57 11/12 ○ ○ 入力電力増加Input power increase

    Test position Test result

    TDK-Lambda R-19

  • HWS100A6.振動試験 Vibration Test

    MODEL : HWS100A-5

    (1) 振動試験種類 Vibration Test Class

    掃引振動数耐久試験 Frequency variable endurance test

    (2) 使用振動試験装置 Equipment Used

    IMV (株) 製 ・制御部 : RC-1120 ・加振部 : VS-1031-200IMV CORP Controller Vibrator

    (3) 試験条件 Test Conditions

    ・周波数範囲 : 10~55Hz ・振動方向 : X, Y, Z Sweep frequency Direction・掃引時間 : 1.0分間 ・試験時間 : 各方向共 1時間 Sweep time 1.0min Sweep count  1 hour each・加速度 : 一定 19.6m/s2 (2G) Acceleration  Constant

    (4) 試験方法 Test Method

    (5) 判定条件 Acceptable Conditions

    1. 破壊しない事  Not to be broken.2. 試験後の出力に異常がない事  No abnormal output after test.

    (6) 試験結果 Test Results

    合格 OK

    Z 振動方向 Direction 振 動 試 験 機 Vibrator

    供試品 D.U.T.

    Device Under Test

    取付台

    Fitting stage X 入出力端子

    Input and output terminal

    TDK-Lambda R-20

  • HWS100A7.ノイズシミュレート試験 Noise Simulate Test

    MODEL : HWS100A-5

    (1) 試験回路及び測定器 Test Circuit and Equipment

    シミュレータ :INS-4320(A) (ノイズ研究所)Simulator (Noise Laboratory Co.,LTD)

    (2) 試験条件 Test Conditions

    ・入力電圧 : 100, 230VAC ・ノイズ電圧 : 0~2kV Input voltage Noise level・出力電圧 : 定格 ・位相 : 0~360 deg Output Voltage Rated Phase・出力電流 : 0, 100% ・極性 : +,- Output current  Polarity・周囲温度    : 25℃ ・印加モード : コモン、ノーマル Ambient temperature Mode Common, Normal・パルス幅 : 50~1000ns ・トリガ選択 : Line Pulse width Trigger select

    (3) 判定条件 Acceptable Conditions

    1. 試験中、5%を超える出力電圧の変動のない事  The regulation of output voltage must not exceed 5% of initial value during test.2. 試験後の出力電圧は初期値から変動していない事 The output voltage must be within the regulation of specification after the test.3. 発煙・発火のない事 Smoke and fire are not allowed.

    (4) 試験結果 Test Results

    合格 OK

    TDK-Lambda R-21

  • HWS100A8.熱衝撃試験 Thermal Shock Test

    MODEL : HWS100A-5

    (1) 使用計測器 Equipment Used

    TSV-40ht : ESPEC

    (2) 試験条件 Test Conditions

    ・電源周囲温度 :-40℃ ⇔ 85℃ Ambient Temperature・試験時間 :図参照 Test Time Refer to Dwg.・試験サイクル :100 サイクル Test Cycle 100 Cycles・非動作 Not Operating

    (3) 試験方法 Test Method

    (4) 判定条件 Acceptable Conditions

    試験後の出力に異常がない事 No abnormal output after test.

    (5) 試験結果 Test Results

    合格 OK

     初期測定の後、供試品を試験槽に入れ、上記サイクルで試験を行う。100サイクル後に、供試品を常温常湿下に1時間放置し、出力に異常がない事を確認する。

    Before testing, check if there is no abnormal output, then put the D.U.T. in testingchamber, and test it according to the above cycle. 100 cycles later, leave it for 1 hourat the room temperature , then check if there is no abnormal output.

    1cycle

    +85℃

    -40℃30min

    30min

    TDK-Lambda R-22